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Prediction of the Ultra-Low-Cycle Fatigue Damage of Q345qC Steel and its Weld Joint

机译:Q345qC钢及其焊接接头的超低周疲劳损伤预测

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摘要

Based on the continuum damage mechanics model (CDM) for monotonic tension, a new CDM for ultra-low-cycle fatigue (ULCF) is put forward to predict ULCF damage of steel and its weld joint under strong earthquakes. The base metal, heat-affected zone and weld metal of Q345qC steel were considered as research objects, and the uniaxial plastic strain threshold of the CDM model was calibrated via tensile testing combined with finite element analysis of notched round bar specimens. ULCF tests of the base metal and weld specimens were carried out to analyse their fatigue life, fracture life and post-fracture path. Based on the calibrated uniaxial plastic strain threshold, the finite element models of base metal and weld specimens suitable for CDM model were established by ABAQUS. The calibration results of material parameters show that the weld metal has the lowest plastic strain threshold and the largest dispersion coefficient at the plastic strain threshold. Prediction results under cyclic loading with a large strain were compared with experimental values, and results showed that the predicted crack initiation and fracture lives of the base metal and weld specimens are lower than their corresponding experimental values. The predicted errors of crack initiation life and fracture life decrease with increasing strain level. The development law of the damage variable reveals exponential growth combined with a stepped pattern. The CDM model can also accurately predict the number of cycles to initial damage. Taking the results together, the CDM of the ULCF of the base metal and weld specimens could successfully predict post-fracture paths.
机译:基于单调张力的连续损伤力学模型(CDM),提出了一种新的超低周疲劳CDM,用于预测强地震作用下钢及其焊接接头的ULCF损伤。以Q345qC钢的母材,热影响区和焊缝金属为研究对象,通过拉力试验结合缺口圆钢试样的有限元分析,对CDM模型的单轴塑性应变阈值进行了标定。对母材和焊缝试样进行了ULCF测试,以分析其疲劳寿命,断裂寿命和断裂后的路径。基于校准的单轴塑性应变阈值,通过ABAQUS建立了适用于CDM模型的母材和焊接试样的有限元模型。材料参数的校准结果表明,焊接金属在塑性应变阈值处具有最低的塑性应变阈值和最大的弥散系数。将大应变循环载荷下的预测结果与实验值进行比较,结果表明,母材和焊缝样品的预测裂纹萌生和断裂寿命低于相应的实验值。裂纹起始寿命和断裂寿命的预测误差随应变水平的增加而减小。损伤变量的发展规律揭示了指数增长和阶梯式增长。 CDM模型还可以准确地预测初始损坏的周期数。综合这些结果,母材和焊缝试样的ULCF的CDM可以成功地预测断裂后的路径。

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